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Psychopharmacology|May 1, 1995
Local 5HT3 receptors mediate fluoxetine but not desipramine-induced increase of extracellular dopamine in the prefrontal cortexG Tanda, R Frau, G Di ChiaraEuropean Journal of Neurology|January 25, 2011
Treatment of depressive symptoms in Parkinson's diseaseP BaroneEuropean Journal of Neurology|January 7, 2010
Neurotransmission in Parkinson's disease: beyond dopamineP BaroneScience (New York, N.Y.)|June 17, 1977
Localization of nigral dopamine-sensitive adenylate cyclase on neurons originating from the corpus striatumP F Spano, M Trabucchi, G Di ChiaraScience (New York, N.Y.)|June 27, 1997
Cannabinoid and heroin activation of mesolimbic dopamine transmission by a common mu1 opioid receptor mechanismG Tanda, F E Pontieri, G Di ChiaraProceedings of the National Academy of Sciences of the United States of America|December 19, 1995
Intravenous cocaine, morphine, and amphetamine preferentially increase extracellular dopamine in the "shell" as compared with the "core" of the rat nucleus accumbensF E Pontieri, G Tanda, G Di ChiaraNeuroscience and Biobehavioral Reviews|July 1, 1997
Dopamine/glutamate interaction as studied by combining turning behaviour and c-Fos expressionM MorelliDrug and Alcohol Dependence|February 11, 2000
Dissociation of physical abstinence signs from changes in extracellular dopamine in the nucleus accumbens and in the prefrontal cortex of nicotine dependent ratsE Carboni, L Bortone, C Giua, et al.European Journal of Pharmacology|August 5, 2000
Cannabinoid CB(1) receptor agonists increase rat cortical and hippocampal acetylcholine release in vivoE Acquas, A Pisanu, P Marrocu, et al.Behavioural Brain Research|May 1, 2014
Conditioned saccharin avoidance induced by infusion of amphetamine in the nucleus accumbens shell and morphine in the ventral tegmental area: behavioral and biochemical studyS Fenu, E Espa, C Cadoni, et al.Pageof 62